AGMA 6101-E08-2008 Design and Selection of Components for Enclosed Gear Drives (Metric Edition)《密封齿轮驱动元件的选择和设计(公制版本)》.pdf
《AGMA 6101-E08-2008 Design and Selection of Components for Enclosed Gear Drives (Metric Edition)《密封齿轮驱动元件的选择和设计(公制版本)》.pdf》由会员分享,可在线阅读,更多相关《AGMA 6101-E08-2008 Design and Selection of Components for Enclosed Gear Drives (Metric Edition)《密封齿轮驱动元件的选择和设计(公制版本)》.pdf(49页珍藏版)》请在麦多课文档分享上搜索。
1、ANSI/AGMA 6101-E08Metric Edition ofANSI/AGMA 6001-E08Reaffirmed March 2014American National StandardDesign and Selection ofComponents for EnclosedGear Drives (Metric Edition)ANSI/AGMA6101-E08iiDesign and Selection of Components for Enclosed Gear Drives (MetricEdition)ANSI/AGMA 6101-E08Metric Edition
2、 of ANSI/AGMA 6001-E08ApprovalofanAmericanNationalStandardrequiresverificationbyANSIthattherequire-ments for due process, consensus, and other criteria for approval have been met by thestandards developer.Consensusisestablishedwhen,inthejudgmentoftheANSIBoardofStandardsReview,substantial agreement h
3、as been reached by directly and materially affected interests.Substantialagreementmeansmuchmorethanasimplemajority,butnotnecessarilyuna-nimity. Consensus requires that all views and objections be considered, and that aconcerted effort be made toward their resolution.TheuseofAmericanNationalStandards
4、iscompletelyvoluntary;theirexistencedoesnotin any respect preclude anyone, whether he has approved the standards or not, frommanufacturing, marketing, purchasing, or using products, processes, or procedures notconforming to the standards.The American National Standards Institute does not develop sta
5、ndards and will in nocircumstances give an interpretation of any American National Standard. Moreover, noperson shall have the right or authority to issue an interpretation of an American NationalStandardinthenameoftheAmericanNationalStandardsInstitute. Requestsforinterpre-tation of this standard sh
6、ould be addressed to the American Gear ManufacturersAssociation.CAUTION NOTICE: AGMA technical publications are subject to constant improvement,revision, or withdrawal as dictated by experience. Any person who refers to any AGMAtechnical publication should be sure that the publication is the latest
7、available from theAssociation on the subject matter.Tablesorotherself-supportingsectionsmaybereferenced. Citationsshouldread: SeeANSI/AGMA 6101-E08, Design and Selection ofComponents for Enclosed Gear Drives(Metric Edition), published by the American Gear Manufacturers Association,500 Montgomery Str
8、eet, Suite 350, Alexandria, Virginia 22314, http:/www.agma.org.Approved December 31, 2008ABSTRACTThis standard outlines the basic practices for the design and selection of components, other than gearing, foruse in commercial and industrial enclosed gear drives.Published byAmerican Gear Manufacturers
9、 Association500 Montgomery Street, Suite 350, Alexandria, Virginia 22314Copyright 2008 by American Gear Manufacturers AssociationAll rights reserved.No part of this publication may be reproduced in any form, in an electronicretrieval system or otherwise, without prior written permission of the publi
10、sher.Printed in the United States of AmericaISBN: 978-1-55589-952-3AmericanNationalStandardANSI/AGMA 6101-E08AMERICAN NATIONAL STANDARDiii AGMA 2008 - All rights reservedContentsPageForeword iv.1 Scope 1.2 Normative references 1.3 Definitions and symbols 1.4 Design conditions 4.5 Shafts 5.6 Keys and
11、 interference fits 17.7 Bearings 208 Housings 21.9 Threaded fasteners 2110 Miscellaneous components 23.Bibliography 42.AnnexesA Allowable stresses for typical key materials 26B Material properties for typical threaded fasteners 28.C Previous method - shaft design 29D Sample problems - transmission s
12、haft design 31.E Shaft deflection 35F Sample problems - keys 40Figures1 Design criteria 52 Cyclic loading 73 Stress convention showing orbiting element 84 Surface finish factor, ka11.5Sizefactor,kb12.6 Reliability factor, kc12.7 Notch sensitivity - through-hardened steel, q 148 Theoretical stress co
13、ncentration factor in bending for a circular shaft with asquare shoulder, Kt(nominal stress is calculated at diameter dshe)149 Theoretical stress concentration factor in bending for a circular shaft witha u-notch, Kt(nominal stress is calculated at diameter dshe)15.10 Theoretical stress concentratio
14、n factor in bending for a circular shaft with aradial hole, Kt(based on full section without considering hole) 1511 Key nomenclature 18.12 Variation of coefficient of friction versus the bearing parameter 21.13 Fastener grip requirement 22.Tables1 Symbols used in equations 2.2 Modifying factor for s
15、tress concentration, kf- typical values for keyways insolid round steel shafts 13.3 Typical allowable misalignment per bearing type 17.4 Joint stiffness factor, KJ23.ANSI/AGMA 6101-E08 AMERICAN NATIONAL STANDARDiv AGMA 2008 - All rights reservedForewordThe foreword, footnotes and annexes, if any, in
16、 this document are provided forinformationalpurposesonlyandarenottobeconstruedasapartofANSI/AGMAStandard6101-E08, Design and Selection of Components for Enclosed Gear Drives (MetricEdition).AGMA260.02 wasapprovedbytheAGMAmembershiponFebruary1,1973,andissuedinJanuaryof1974. Itconsolidatedwithminorrev
17、ision,informationcontainedinthefollowingsuperseded AGMA Standards:AGMA 255.02 (November 1964), Bolting (Allowable Tensile Stress) for Gear Drives;AGMA 260.01 (March 1953), Shafting - Allowable Torsional and Bending Stresses;AGMA 260.02 also incorporated allowable stresses for keys;AGMA 265.01 Bearin
18、gs - Allowable Loads and Speeds.The purpose of ANSI/AGMA 6001-C88, as a replacement for AGMA 260.02, was toestablishacommonbaseforthedesignandselectionofcomponentsforthedifferenttypesof commercial and industrial gear drives.ANSI/AGMA6001-C88wasexpandedtoincludeageneralizedshaftstressequationwhichinc
19、luded hollow shafting, miscellaneous components, housings, and keyway stresscalculations. All design considerations were revised to allow for 200 percentpeak load forhelical, spiral bevel, spur and herringbone gearing, and 300 percent peak load forwormgearing. Thebearingsectionwasupdatedtoincludecon
20、siderationoflifeadjustmentfactors, bearing lives other than 5000 hours and reliability levels other than L10.DuringthepreparationofANSI/AGMA6001-C88,aconsiderableamountoftimewasspentontheshaftdesignsectioninanefforttoincludethemostrecenttheoriesonshaftstressesand material characteristics. The standa
21、rd included the existing practice for shaft design,and for reference purposes, appendix C included a description of, and excerpts from,ANSI/ASME B106.1M, Design of Transmission Shafting, published in 1985.ANSI/AGMA 6001-C88 was approved by the membership in May, 1988 and approved asan American Natio
22、nal Standard on June 24, 1988.ANSI/AGMA6001-D97wasexpandedtoincludemorerecenttheoriesonshaftdesignandanalysis. Also, equations for shaft deformation were added. ANSI/AGMA 6001-D97 wasapproved by the membership in October, 1996 and approved as an American NationalStandard on August 7, 1997.ANSI/AGMA
23、6101-E08 was updated to become a metric standard as required by ANSIpractices. In the process several improvements and simplifications were included.Minimum material requirements were added for shaft material and the shaft deflectionclause was moved to an annex. Also, the clauses on keys and fastene
24、rs were revised toreflect current practices with higher allowable stresses in some cases.ThefirstdraftofANSI/AGMA6101-E08wasmadeinAugust,2002. ItwasapprovedbytheAGMA membership in September, 2008. It was approved as an American NationalStandard on December 31, 2008.Suggestionsforimprovementofthissta
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